An easy-to-clean liftable three-phase separation device for geothermal heating

A technology of three-phase separation and separation device, which is applied in the direction of centrifugal separation water/sewage treatment, mining wastewater treatment, degassed water/sewage treatment, etc. Low-level problems, to achieve the effects of small footprint, durable hydrophilicity, and increased gas-liquid turbulence

Active Publication Date: 2022-03-01
SOUTHWEST PETROLEUM UNIV
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  • Abstract
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] The existing three-phase separation device separates the gas-liquid separation from the sediment separation. Its defects are: low separation efficiency, incomplete separation, large floor area, difficult cleaning inside the cyclone desander, disassembly and assembly. Difficult to maintain and expensive to install and cannot be widely used

Method used

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  • An easy-to-clean liftable three-phase separation device for geothermal heating
  • An easy-to-clean liftable three-phase separation device for geothermal heating
  • An easy-to-clean liftable three-phase separation device for geothermal heating

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Embodiment Construction

[0025] The present invention will be further described below in conjunction with the accompanying drawings and specific embodiments.

[0026] The invention relates to a three-phase separation device for geothermal heating that is easy to clean and can be raised and lowered, including: figure 1 As shown, the ball-type pneumatic vibrator (3) is connected to the overflow cleaning pipe (1) through bolts, and the ball-type pneumatic vibrator (3) is composed of an anti-rust shell, alloy steel raceway hardened steel balls and a nylon end cover Composition, when the compressed air enters the casing, the steel ball is driven to rotate at a high speed in the raceway to generate vibration, which is convenient for cleaning the inside of the separation device to avoid sediment blocking the pipeline, and a cleaning pipe valve (2) is installed at the mouth of the overflow cleaning pipe (1) , the overflow cleaning pipe (1) is connected with the pipe-type lifting structure (4) through the bolt...

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Abstract

The invention relates to a three-phase separation device for geothermal heating that is easy to clean and can be lifted. Air pipe, cyclone desand removal device, inclined liquid storage device and bottom support, the geothermal water is desanded by the cyclone desand removal device and then passed through the reverse cone baffle device to realize three-phase separation. The beneficial effect is that the ball-type pneumatic vibrator and the overflow cleaning pipe can effectively prevent sediment from clogging the inside of the separation device, improve separation efficiency, occupy a small area, be easy to install and maintain, and have low cost and can be widely used.

Description

technical field [0001] The invention relates to the technical field of geothermal equipment, in particular to an easy-to-clean and liftable three-phase separation device for geothermal heating. Background technique [0002] With the gradual development of my country's economy, the demand for energy is increasing day by day. The development and utilization of new clean energy has become an inevitable demand for the development of the times. As a new clean energy, geothermal energy has a large storage capacity, is renewable and has a broad development prospect. However, the geothermal water from the heat storage will contain a small amount of sediment. After the local hot water rises to the wellhead, due to the decrease in pressure, the geothermal water will be in a state of two-phase mixture of steam and liquid. The non-condensable gas originally dissolved in the water will It will also escape because of this. If these gases are not excluded, air resistance will be formed in ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C02F1/38C02F1/20C02F103/10
CPCC02F1/38C02F1/20C02F2103/10
Inventor 张杰赵萌张瀚谢经轩祝效华
Owner SOUTHWEST PETROLEUM UNIV
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